Control of photoluminescence of nitrogen-vacancy centers embedded in diamond nanoparticles coupled to silicon nanoantennas

Author:

Zalogina Anastasiia12ORCID,Javadzade Javid3ORCID,Savelev Roman4ORCID,Komissarenko Filipp4ORCID,Uvarov Alexander5ORCID,Mukhin Ivan567ORCID,Shadrivov Ilya1ORCID,Akimov Alexey8910ORCID,Zuev Dmitry4ORCID

Affiliation:

1. Nonlinear Physics Centre, Research School of Physics, Australian National University 1 , Canberra, ACT 2601, Australia

2. School of Biological Sciences, The University of Adelaide 2 , Adelaide, SA 5005, Australia

3. 3rd Institute of Physics and Center for Applied Quantum Science, University of Stuttgart 3 , 70569 Stuttgart, Germany

4. School of Physics and Engineering, ITMO University 4 , St. Petersburg 197101, Russia

5. Saint Petersburg Academic University 5 , St. Petersburg 194021, Russia

6. SCAMT Institute ITMO University 6 , St. Petersburg 197101, Russia

7. Higher School of Engineering Physics, Peter the Great St. Petersburg Polytechnic University 7 , St. Petersburg 195251, Russia

8. PN Lebedev Institute RAS 8 , Moscow 119991, Russia

9. Russian Quantum Center 9 , Skolkovo, Moscow 143025, Russia

10. National University of Science and Technology 10 , Moscow 119049, Russia

Abstract

The development of nanophotonics systems for the manipulation of luminescent properties of single quantum emitters is essential for quantum communication and computing. Dielectric nanosystems enable various opportunities for light control through inherent electric and magnetic resonances; however, their full potential has not yet been discovered. Here, emission properties of nitrogen-vacancy (NV) centers in nanodiamonds placed in the near-field zone of silicon nanoresonators are investigated. It is demonstrated experimentally that the spontaneous emission rate of single NV centers in 50 nm nanodiamonds can be modified by their coupling to spherical nanoantennas, reducing the mode of the lifetime distribution by ≈2 times from 16 to 9 ns. It is also shown that the collected intensity of photoluminescence emission from multiple NV centers in a 150 nm nanodiamond coupled to a cylindrical nanoantenna is increased by more than 50% compared to the intensity from the same nanodiamond on a bare substrate.

Funder

Russian Science Foundation

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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